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A Sensorless Haptic Force Estimation Method and Its Application to Uncertain Robotic Manipulators

  • Beihang University
  • China State Shipbuilding Corporation

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

Abstract

In this paper, a haptic force estimation scheme without force sensors is proposed for a class of robotic manipulators with multiple disturbances. Different from previous methods, besides haptic force, other disturbances and uncertainties of robotic manipulators are taken into account simultaneously. Motivated by the composite hierarchical anti-disturbance control strategy, a robust haptic force observer (RHOB) is designed by a solution of a linear matrix inequality (LMI), which can extract precise haptic force from multiple disturbances by taking a strategy of compensation and suppression in due course. Moreover, some integral auxiliary signals are regarded as the robust performance indices introduced in the design and analysis. Also, a composite control strategy based on the mentioned design of RHOB guarantees the boundedness of all signals in the augmented closed-loop system and the proposed robust performance indices, and furthermore, the asymptotic convergences of tracking error and force estimation error, in the case of slow-varying haptic force, are successfully achieved. Simulation results demonstrate the effectiveness of the proposed method.

Original languageEnglish
Title of host publicationProceedings of the 40th Chinese Control Conference, CCC 2021
EditorsChen Peng, Jian Sun
PublisherIEEE Computer Society
Pages2097-2102
Number of pages6
ISBN (Electronic)9789881563804
DOIs
StatePublished - 26 Jul 2021
Event40th Chinese Control Conference, CCC 2021 - Shanghai, China
Duration: 26 Jul 202128 Jul 2021

Publication series

NameChinese Control Conference, CCC
Volume2021-July
ISSN (Print)1934-1768
ISSN (Electronic)2161-2927

Conference

Conference40th Chinese Control Conference, CCC 2021
Country/TerritoryChina
CityShanghai
Period26/07/2128/07/21

Keywords

  • Haptic force
  • LMI
  • disturbance observer
  • parametric uncertainties
  • robotic manipulators

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